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Synthesis and characterization of Mo2 C based materials over activated carbon derived from sewage sludge pyrolysis for catalytic applications

机译:污泥污泥热解催化应用的活性炭对MO2 C基材料的合成与表征

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摘要

Abstract Transition metal carbides have been successfully used as substitute materials for conventional noble metal catalyst in several important industrial reactions due to their interesting physicochemical properties. Surface structure, chemical composition and metal-support interactions, as well as processing conditions, are of utmost importance in the use of such materials in catalysis. The present study aimed to synthesize and evaluate pure molybdenum carbide with and without support, and bimetallic Mo-Ni carbide over a carbon active support derived from sewage sludge pyrolysis. The support was chemically (KOH) and physically (thermal treatment) activated before use. TG/DTG, XRD, XRF, SEM, BET and particle size evaluation were performed, together with adsorption/desorption isotherms. Results indicated that the applied synthesis method was adequate for the obtainment of pure materials. The increase in surface area of the support was significant, from 13 to 141 m².g-1 after the thermal and chemical treatment; also, supporting Mo2C over carbon provided an increase from 45 to 73 m².g-1 in surface area, which indicated its potential as a catalytic material as well as the effectiveness of the applied methodology.
机译:抽象的过渡金属的碳化物已经被成功地用作替代材料用于在几个重要的工业反应常规贵金属催化剂由于它们的有趣的物理化学性质。表面结构,化学成分和金属 - 载体相互作用,以及加工条件,是在催化使用这样的材料的最重要的。旨在本研究中,以合成和有和没有支撑评估纯碳化钼,和双金属的Mo-Ni系碳化物在从污水污泥热解衍生的碳活性的支持。支撑是化学(KOH)和物理(热处理)在使用前被激活。 TG / DTG,XRD,XRF,SEM,BET和粒度的评价进行,具有吸附/解吸等温线一起。结果表明,应用的合成方法是足够的对单纯的材料的获得。在载体的表面面积的增加是显著,从13到141m².g-1的热和化学处理后;还,经碳支撑的Mo2C设置在表面区域的增加为45〜73m².g-1,这表明其潜在的作为催化材料以及所施加的方法的有效性。

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